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INTEGRATED FEATURE MODELLER FOR CERTAIN MANUFACTURING PROCESSES

机译:某些制造过程的集成特征模型

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摘要

This work explains the development of an integrated modeler, which is applied in the design-to-manufacturing stages of manufacturing processes namely machining, sheet metal processing and forging. Its system architecture is broadly divided into four modules namely, Feature Based Design (FBD), Virtual Factory Environment (WE), Process Based Feature Mapping (PBFM) and Process Planning (PP). Feature based design is used for the design, modeling, synthesis, representation and validation of the components for manufacturing applications. New set of features namely integrated features are pre-defined as feature templates and instanced to get / derive the information required for the design-to-manufacturing stages of the components. VFE defines the factory, which provides the database for operations, machines, cutting tools, work pieces etc. The knowledge base of the developed system maps validated features of the component into operation sets in the first phase of the PBFM. Each operation in the operation sets can be executed using different machines and tools in a factory. All these possible choices are obtained in the second phase of PBFM. Genetic algorithm is used to find the optimal sequence of operations, machines and tools for different criteria in the process planning stage. This paper explains the developed system with case studies.
机译:这项工作解释了集成建模器的开发,该模型将应用于制造过程的设计到制造阶段,即机械加工,钣金加工和锻造。其系统架构大致分为四个模块,即基于功能的设计(FBD),虚拟工厂环境(WE),基于流程的功能映射(PBFM)和流程计划(PP)。基于特征的设计用于制造应用组件的设计,建模,合成,表示和验证。新的功能集(即集成功能)被预先定义为功能模板,并被实例化以获取/导出组件从设计到制造阶段所需的信息。 VFE定义了工厂,该工厂为操作,机器,切削工具,工件等提供了数据库。已开发系统的知识库将组件的经过验证的特征映射到PBFM的第一阶段的操作集中。可以使用工厂中的不同机器和工具来执行操作集中的每个操作。所有这些可能的选择都是在PBFM的第二阶段中获得的。遗传算法用于在过程计划阶段找到针对不同标准的最佳操作顺序,机器和工具。本文通过案例研究说明了开发的系统。

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